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Controlled reduction synthesis of yolk-shell magnetic@void@C for electromagnetic wave absorption

机译:控制yolk-shell磁性@ Void @ Void @电磁波吸收的合成

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摘要

The development of broadband and high-efficiency electromagnetic wave absorbing materials in the gigahertz is highly crucial and challenging. Here, typical magnetic-carbon composites were successfully obtained, which involves a controlled reduction process from a semiconductor to magnetic materials under reducing atmosphere. Due to the huge difference in lattice constants, yolk-shell Fe3O4@C and Fe@void@C powders were developed from core-shell a-Fe2O3@PDA precursor. The chemical composition, magnetic property, and morphology of the final magnetic@void@C powders were discussed comprehensively. Related electromagnetic parameters of all samples were tested to analyze the storage and loss ability toward electromagnetic wave energy. Inspiringly, both the Fe3O4@C and Fe@void@C composites exhibited high-performance energy absorption in the microwave band. The minimal reflection loss (RLmin) value of Fe3O4@C is -45.4 dB at the absorber thickness only at 1.5 mm and the efficient absorption (RL <= -10 dB) frequency up to 5.5 GHz at 2.0 mm thickness. Meanwhile, the RLmin value of Fe@void@C is -66.5 dB at the absorber thickness of only 1.6 mm and show broadband responding arrange, covering almost all the Ku-band. The synthesized magnetic-carbon composites display excellent electromagnetic properties and high-efficient energy conversion behaviors, meeting to the high requirements for modern microwave absorption materials.
机译:Gigahertz中的宽带和高效电磁波吸收材料的开发具有重要的至关重要和具有挑战性。这里,成功获得了典型的磁性碳复合材料,其涉及从半导体到还原气氛下的磁性材料的控制还原过程。由于晶格常数巨大差异,从核心壳A-Fe2O3 @ PDA前体开发了yolk-shell Fe3O4 @ C和Fe @ C粉末。全面讨论了最终磁性@ Void @ C粉末的化学成分,磁性和形态。测试了所有样品的相关电磁参数,分析了电磁波能量的储存和损失能力。鼓舞方式,FE3O4 @ C和Fe @ Void @ C复合材料在微波带中表现出高性能的能量吸收。 Fe3O4 @ C的最小反射损耗(RLMIN)值仅在1.5mm处的吸收器厚度下为-45.4dB,并且在2.0 mm厚度下高达5.5GHz的有效吸收(RL <= -10 dB)频率。同时,Fe @ Void @ C的RLMIN值为-66.5 dB,仅为1.6毫米,显示宽带响应排列,几乎所有的KU波段。合成的磁性碳复合材料显示出优异的电磁特性和高效的能量转换行为,满足现代微波吸收材料的高要求。

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